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Oak Ridge National Lab, Cleveland Clinic, and IBM Achieve First-Known Computations of Fusion Materials on a Quantum Computer

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Oak Ridge National Lab, Cleveland Clinic, and IBM Achieve First-Known Computations of Fusion Materials on a Quantum Computer
Business

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Oak Ridge National Lab, Cleveland Clinic, and IBM Achieve First-Known Computations of Fusion Materials on a Quantum Computer

2026-07-06 19:00 Last Updated At:19:15

Initial results lay the groundwork for key objective of the United States Genesis Mission

Quantum-centric supercomputing algorithm takes aim at tritium extraction – a bottleneck to abundant energy and a long-standing challenge for classical computers working alone

YORKTOWN HEIGHTS, N.Y., July 6, 2026 /PRNewswire/ -- A team of scientists from Oak Ridge National Laboratory (ORNL), Cleveland Clinic, and IBM (NYSE: IBM), have calculated nine molecular configurations of a promising material to produce fuel for fusion energy – the first-known instance of such computations on quantum computers.

Such calculations, demonstrated in a new paper published on arXiv, are computationally challenging for classical computers to scale when working alone. They are a fundamental step towards optimizing the production and extraction of tritium – an extremely rare material in nature that is necessary to produce fusion energy with most of the proposed machines. Ensuring adequate supplies of tritium has long been a barrier to realizing the promise of clean and abundant energy from fusion power plants, and solving this issue is a key objective of the United States Department of Energy's (DOE) Genesis Mission.

Quantum computers are well-suited to compute the atomic-level chemistry of a liquid salt that contains fluorine, lithium, and beryllium (FLiBe), one of the leading candidate materials for extracting tritium fuel in fusion reactors. To compute different configurations of clusters of FLiBe, the team used the same quantum-centric supercomputing techniques now being applied to 12,635-atom protein simulations with Cleveland Clinic. These methods can calculate the quantum behavior of electrons in complex materials, complementing and enhancing the capabilities of classical supercomputers and algorithms.

"In order to demonstrate the capabilities catalyzed by the Genesis Mission, we have built a team of leading experts across seven DOE national labs, four universities, three industry partners, and Cleveland Clinic to pursue a multi-pronged discovery cycle aimed at optimizing tritium production in molten salt fusion blanket materials," said Tom Beck, Section Head for Science Engagement in the Computing and Computational Sciences Directorate at ORNL. "Quantum computers, such as those built by IBM and enhanced by AI and exascale computing, are key tools that accelerate the discovery and design cycles needed to produce sufficient tritium to fuel fusion reactors."

"This work builds on our advances in simulating complex biological systems at scale, including proteins spanning 12,635 atoms and extends those techniques into materials science to explore fusion-relevant systems with greater accuracy and efficiency," said corresponding author Kenneth Merz, PhD, staff scientist at Cleveland Clinic. "At Cleveland Clinic, we are focused on applying advanced technologies to deepen scientific understanding and accelerate discovery. This collaboration reflects the growing importance of quantum computing, AI, and high-performance computing as tools for scientific inquiry. By bringing these technologies together, researchers can provide solutions to challenging real-world problems with greater speed and precision."

"Bringing quantum, AI, and classical computing together is essential to tackling our society's most fundamental scientific challenges – unlocking capabilities which none of these paradigms can access alone," said Jerry Chow, CTO of Quantum-Centric Supercomputing at IBM. "These results add to mounting evidence that quantum-centric supercomputing is now a practical scientific tool for problems that have long challenged chemists, engineers, and materials scientists. As quantum computers scale, the path ahead is promising."

The Tritium Challenge at the Heart of Fusion Energy

The exploration aligns with the Genesis Mission's broader goal to unify high-performance computing (HPC), artificial intelligence, and quantum computing with the country's major scientific instruments across the DOE's 17 national laboratories to accelerate scientific discovery. As one of the mission's industry collaborators, IBM is working with its partners to explore how quantum-centric supercomputing – which brings together CPUs, GPUs, and QPUs to solve problems they cannot tackle alone – could help to address critical national challenges, including precisely modeling complex material interactions to help unlock a fuel supply for widespread, fully working fusion power plants.

Optimizing the best recipe for FLiBe – whose composition is dynamically changing under intense neutron radiation, extreme heat, and magnetic fields – is one of the hardest science and engineering challenges today. It requires extensive study of its quantum mechanical properties including energetics, stability, and interaction with tritium to understand how it will perform multiple functions, including that of tritium breeding material at very hot temperatures. Today, such research is only possible through difficult and expensive experimentation, or through classical computing approximation methods that can lack accuracy.

To compute energies of different FLiBe conformations with and without tritium, the team used quantum-centric supercomputing to enable quantum and classical computers to work together – in which the parts of a problem that can be broken down into quantum circuits are solved on a quantum computer. This allowed the team to more precisely determine the electronic structure of the material and how its atoms behave, particularly how strongly they bind tritium at a fundamental molecular level. In turn, the scientists could identify the range of configurations the atoms moved through and extract properties – such as how strongly and through which mechanism each configuration binds tritium – that would otherwise remain hidden.

The Road Ahead

The collaboration is ongoing, aiming to reduce the time it takes for data to transfer between quantum and classical resources and to scale the size of molecular interactions simulated. Eventually, the team hopes the fusion energy ecosystem will be able to use this workflow directly to design and verify their own materials.

This work adds to a growing body of 2026 milestones demonstrating IBM quantum computers as useful scientific tools – including simulating real magnetic materials, creating a never-before-seen half-Möbius molecule, and modeling proteins relevant to biological research that span up to 12,635 atoms.

For more about this research, please read the blog: https://www.ibm.com/quantum/blog/molten-salts-fusion-quantum

About IBM

IBM is a leading global hybrid cloud and AI, and business services provider, helping clients in more than 175 countries capitalize on insights from their data, streamline business processes, reduce costs and gain the competitive edge in their industries. Thousands of governments and corporate entities in critical infrastructure areas such as financial services, telecommunications and healthcare rely on IBM's hybrid cloud platform and Red Hat OpenShift to affect their digital transformations quickly, efficiently and securely. IBM's breakthrough innovations in AI, quantum computing, industry-specific cloud solutions and business services deliver open and flexible options to our clients. All of this is backed by IBM's legendary commitment to trust, transparency, responsibility, inclusivity and service.

For more information, visit https://research.ibm.com.

Media Contacts:

Danielle Cerasani Estevez
IBM Communications
dcerasani@ibm.com

Brittany Forgione
IBM Communications
Brittany.Forgione@ibm.com

 

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Oak Ridge National Lab, Cleveland Clinic, and IBM Achieve First-Known Computations of Fusion Materials on a Quantum Computer

Oak Ridge National Lab, Cleveland Clinic, and IBM Achieve First-Known Computations of Fusion Materials on a Quantum Computer

Oak Ridge National Lab, Cleveland Clinic, and IBM Achieve First-Known Computations of Fusion Materials on a Quantum Computer

Oak Ridge National Lab, Cleveland Clinic, and IBM Achieve First-Known Computations of Fusion Materials on a Quantum Computer

HONG KONG, Aug. 24, 2026 /PRNewswire/ -- Sun Hung Kai Properties Limited (SHKP) and AXA Hong Kong and Macau (AXA) today announced a major leasing agreement for the International Gateway Centre (IGC), with AXA committing approximately 97,500 square feet, occupying two and a half floors for its new distribution office and premier one-stop wealth management hub.

The agreement underscores West Kowloon's emergence as a forward-looking business district with IGC playing a key role in shaping its evolving commercial landscape. Scheduled for occupancy in early 2028, AXA's expansion at IGC reflects its commitment to long-term market investment, enhancing its distribution capabilities, and strengthening AXA's role as a trusted wealth management partner in the region.

KW Lo, Executive Director of Sun Hung Kai Real Estate Agency said: "SHKP warmly welcomes AXA to the IGC. The presence of AXA, a leading global insurance company, further strengthens IGC's position as a premier destination for multinational corporations. As a landmark commercial development shaping the future of Hong Kong's business landscape, IGC is set to enhance Hong Kong's competitiveness as a leading international finance hub and reinforce its standing as the world's largest cross-boundary wealth management centre, supporting the city's next phase of economic growth. "

Jonathan Li, Chief Distribution Officer of AXA Greater China, said, "Hong Kong remains a vital strategic hub for AXA in Asia, and securing this 10-year lease at IGC reflects our strong confidence in the city's future prospects. Establishing such a premier presence here is pivotal to expanding our distribution capabilities and accelerating our sustained growth in the region. We look forward to building a fruitful partnership with SHKP as we drive long-term success. "

The new space will serve as a dedicated flagship for AXA's wealth and legacy planning offerings, serving clients across Hong Kong, Macau and the broader region. Situated above Hong Kong's only High Speed Rail terminus, IGC offers unparalleled connectivity reaching major Chinese Mainland cities, with most major Greater Bay Area cities accessible within an hour, enabling AXA to deepen its service reach and engagement across the region.

This expanded presence empowers AXA's financial consultants to deliver comprehensive financial, health and legacy planning solutions alongside exceptional experiences for individual, high-net-worth, and corporate clients.

IGC is SHKP's new flagship integrated commercial development. The development comprises two twin towers of four Grade-A office blocks, offering approximately 2.5 million square feet of premium space. Complementing the office towers is Stage IGC, a five-level retail podium with over 600,000 square feet of gross floor area and scheduled to open in phases.

Forming part of an eight-million-square-foot commercial hub in West Kowloon, IGC offers unrivalled "air-plus-rail" connectivity, providing seamless access for corporations and their clients to Chinese Mainland and global markets. IGC also sets new benchmarks in sustainability, having achieved ten major green building certifications or pre certifications under LEED, BEAM Plus, WELL, and others. It is also the first office development in the Greater Bay Area to receive the BREEAM International New Construction "Excellent" rating.

– END –

About AXA Hong Kong and Macau

AXA Hong Kong and Macau is a member of the AXA Group, a leading global insurer with presence in 52 markets and serving 92 million customers worldwide. Our purpose is to act for human progress by protecting what matters.

As one of the most diversified insurers in Hong Kong, we offer integrated solutions across Life, Health and General Insurance. We are the largest General Insurance provider and a major Health and Employee Benefits provider. Our aim is to not only be the insurer to provide comprehensive protection to our customers, but also a holistic partner to the individuals, businesses and community we serve. At the core of our service commitment is continuous product & service innovation and customer experience enrichment, which is achieved through actively listening to our customers' needs and leveraging and investing in technology and digital transformation.

We embrace our responsibility to be a driving force against climate change and a force for good to create shared value for our community. We are proud to be the first to address the importance of mental health through different products and services and thought leading iconic research. Our overall Sustainability Strategy, with emphasis on climate strategy and biodiversity commitment, is developed based on TCFD recommendations. We are committed to integrating environmental, social and governance factors across our business and strive to contribute to a sustainable future through 3 distinct roles - as an investor, an insurer and an exemplary company.

THIS PRESS RELEASE IS AVAILABLE ON AXA'S WEBSITE: AXA.COM.HK

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SHKP and AXA Sign Major Lease Agreement at IGC, Accelerating AXA's Agency Growth and Market Leadership

SHKP and AXA Sign Major Lease Agreement at IGC, Accelerating AXA's Agency Growth and Market Leadership

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